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Effect of Polyacrylic Acid Addition on Rheology of SiC-Al_2O_3-ZrO_2(3Y) Mixed Suspensions

机译:添加聚丙烯酸对SiC-Al_2O_3-ZrO_2(3Y)混悬液流变学的影响

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摘要

A suspension with good rheology and high stability is crucial for slip casting and gelcasting technology. However, a mixed suspension from two or more different powders usually has bad rheology because of the easy agglomeration of mixed powders caused by the attractive force between the powders with heterocharges. We studied the surface modification of the each single-component powders (SiC, Al_2O_3, ZrO_2(3Y) powders) and the SiC-Al_2O_3-ZrO_2(3Y) mixed powders to increase the repulsive force by adjusting the pH value and adding polyacrylic acid (PAA) as dispersant. The PAA addition effects on the SiC-Al_2O_3-ZrO_2(3Y) mixture were investigated in terms of zeta potential, pH range for heterocharge region, dispersion of the mixed powders and rheology of the mixed slurry based on the study of each unary suspensions. The results show that before surface modification the SiC-Al_2O_3-ZrO_2(3Y) mixed powders were agglomerated severely because they were in the heterocharge region with a broad pH range from 3.5 to 8.25, while after surface modification (pH = 10.5, PAA = 0.8wt%) the heterocharge region was narrowed with a relatively narrower pH range from 2.6 to 3.7. The mixed powders with homo-charges were dispersed well because of the great electrostatic repulsive force and steric hindrance offered by PAA and the mixed suspensions had favorable rheology.
机译:具有良好流变性和高稳定性的悬浮液对于粉浆浇铸和凝胶浇铸技术至关重要。然而,由两种或更多种不同粉末组成的混合悬浮液通常具有不良的流变性,这是因为由粉末之间的带电荷的吸引力引起的混合粉末易于团聚。我们研究了每种单组分粉末(SiC,Al_2O_3,ZrO_2(3Y)粉末)和SiC-Al_2O_3-ZrO_2(3Y)混合粉末的表面改性,以通过调节pH值和添加聚丙烯酸来增加排斥力( PAA)作为分散剂。根据每种一元悬浮液的研究,从ζ电位,杂电荷区域的pH范围,混合粉末的分散性和混合浆料的流变性等方面研究了PAA对SiC-Al_2O_3-ZrO_2(3Y)混合物的添加作用。结果表明,在表面改性前,SiC-Al_2O_3-ZrO_2(3Y)混合粉末在pH范围为3.5至8.25的杂化区域内剧烈凝结,而在表面改性后(pH = 10.5,PAA = 0.8)杂化区域变窄,pH范围从2.6缩小到3.7。由于PAA提供了很大的静电排斥力和位阻,具有均匀电荷的混合粉末分散得很好,并且混合悬浮液具有良好的流变性。

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    Key Laboratory of Advanced Materials and Manufacturing Technology of Liaoning Province, Shenyang University, Shenyang, Liaoning 110044, People's Republic of China;

    Key Laboratory of Advanced Materials and Manufacturing Technology of Liaoning Province, Shenyang University, Shenyang, Liaoning 110044, People's Republic of China;

    Key Laboratory of Advanced Materials and Manufacturing Technology of Liaoning Province, Shenyang University, Shenyang, Liaoning 110044, People's Republic of China;

    Key Laboratory of Advanced Materials and Manufacturing Technology of Liaoning Province, Shenyang University, Shenyang, Liaoning 110044, People's Republic of China;

    Key Laboratory of Advanced Materials and Manufacturing Technology of Liaoning Province, Shenyang University, Shenyang, Liaoning 110044, People's Republic of China;

    Department of Materials Science and Engineering, School of Materials and Metallurgy, Northeastern University, Shenyang, Liaoning 110044, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:39:49

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